School of Food and Biological Engineering , Shaanxi University of Science and Technology , Xi'an 710021 , China.
Key Laboratory of Life-Organic Analysis of Shandong Province , Qufu Normal University , Qufu 273165 , China.
J Agric Food Chem. 2018 Apr 4;66(13):3572-3580. doi: 10.1021/acs.jafc.8b00869. Epub 2018 Mar 26.
The present study reported a facile, sensitive, and efficient method for enrichment and determination of trace polycyclic aromatic hydrocarbons (PAHs) in food samples by employing new core-shell nanostructure magnetic covalent organic framework hybrid microspheres (FeO@COF-(TpBD)) as the sorbent followed by HPLC-DAD. Under mild synthetic conditions, the FeO@COF-(TpBD) were prepared with the retention of colloidal nanosize, larger specific surface area, higher porosity, uniform morphology, and supermagnetism. The as-prepared materials showed an excellent adsorption ability for PAHs, and the enrichment efficiency of the FeO@COF-(TpBD) could reach 99.95%. The obtained materials also had fast adsorption kinetics and realized adsorption equilibrium within 12 min. The eluent was further analyzed by HPLC-DAD, and good linearity was observed in the range of 1-100 ng/mL with the linear correlation being above 0.9990. The limits of detection (S/N = 3) and limits of quantitation (S/N = 10) for 15 PAHs were in the range of 0.83-11.7 ng/L and 2.76-39.0 ng/L, respectively. For the application, the obtained materials were employed for the enrichment of trace PAHs in food samples and exhibited superior enrichment capacity and excellent applicability.
本研究报道了一种简便、灵敏、高效的方法,用于通过使用新型核壳纳米结构磁性共价有机骨架杂化微球(FeO@COF-(TpBD))作为吸附剂,然后通过 HPLC-DAD 来富集和测定食品样品中的痕量多环芳烃(PAHs)。在温和的合成条件下,保留胶体纳米尺寸、更大的比表面积、更高的孔隙率、均匀的形态和超顺磁性,制备了 FeO@COF-(TpBD)。所制备的材料对 PAHs 具有优异的吸附能力,FeO@COF-(TpBD) 的富集效率可达到 99.95%。所得材料还具有快速的吸附动力学,在 12 分钟内即可实现吸附平衡。进一步通过 HPLC-DAD 对洗脱液进行分析,在 1-100ng/mL 的范围内观察到良好的线性关系,线性相关系数均大于 0.9990。15 种 PAHs 的检出限(S/N=3)和定量限(S/N=10)分别为 0.83-11.7ng/L 和 2.76-39.0ng/L。在应用方面,所得到的材料用于食品样品中痕量 PAHs 的富集,表现出优异的富集能力和良好的适用性。